...
首页> 外文期刊>Scientific reports. >Effect of Deepwater Horizon Crude Oil Water Accommodated Fraction on Olfactory Function in the Atlantic Stingray, Hypanus sabinus
【24h】

Effect of Deepwater Horizon Crude Oil Water Accommodated Fraction on Olfactory Function in the Atlantic Stingray, Hypanus sabinus

机译:深水地平线原油水分分数对大西洋黄貂鱼,山楂山脉嗅觉功能的影响

获取原文

摘要

The Deepwater Horizon oil spill was the largest accidental marine oil spill in history, releasing nearly 5 million barrels of crude oil. Crude oil causes both lethal and sublethal effects on marine organisms, and sensory systems have the potential to be strongly affected. Marine fishes rely upon the effective functioning of their sensory systems for detection of prey, mates, and predators. However, despite the obvious importance of sensory systems, the impact of crude oil exposure upon sensory function remains largely unexplored. Here we show that olfactory organ responses to amino acids are significantly depressed in oil exposed stingrays. We found that the response magnitude of the electro-olfactogram (EOG) to 1?mM amino acids decreased by an average of 45.8% after 48?h of exposure to an oil concentration replicating that measured in coastal areas. Additionally, in oil exposed individuals, the EOG response onset was significantly slower, and the clearing time was protracted. This study is the first to employ an electrophysiological assay to demonstrate crude oil impairment of the olfactory system in a marine fish. We show that stingrays inhabiting an area impacted by an oil spill experience reduced olfactory function, which would detrimentally impact fitness, could lead to premature death, and could cause additional cascading effects through lower trophic levels.
机译:深水地平线漏油是历史上最大的意外船舶漏油,释放了近500万桶原油。原油导致致命和对海洋生物的致命作用,感觉系统具有强烈影响的可能性。海洋鱼依赖于其感官系统的有效运作,以检测猎物,配偶和捕食者。然而,尽管感官系统的重要性明显,但原油暴露对感官功能的影响仍然很大程度上是未开发的。在这里,我们显示对氨基酸的嗅觉器官应对在油暴露的标记中显着抑制。我们发现,在暴露于沿海地区测量的油浓度复制的油浓度复制后,电嗅图(Eog)至1·mm氨基酸的响应大小平均降低45.8%。另外,在油暴露的个体中,EOG响应发作显着较慢,并且清算时间延长。本研究是第一个采用电生理学测定以展示海洋鱼中嗅觉系统的原油损伤。我们表明,TINGRAYS居住在漏油泄漏经历的区域减少了嗅觉功能,这可能导致过早死亡,并且可能通过较低的营养水平造成额外的级联效应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号